Tert-expressing cells contribute to salivary gland homeostasis and tissue regeneration after radiation therapy

表达 Tert 的细胞有助于唾液腺稳态和放射治疗后的组织再生

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作者:Li Guan ,Vignesh Viswanathan ,Yuyan Jiang ,Sivakamasundari Vijayakumar ,Hongbin Cao ,Junfei Zhao ,Deana Rae Crystal Colburg ,Patrick Neuhöfer ,Yiru Zhang ,Jinglong Wang ,Yu Xu ,Eyiwunmi E Laseinde ,Rachel Hildebrand ,Mobeen Rahman ,Richard Frock ,Christina Kong ,Philip A Beachy ,Steven Artandi ,Quynh-Thu Le

Abstract

Salivary gland homeostasis and regeneration after radiotherapy depend significantly on progenitor cells. However, the lineage of submandibular gland (SMG) progenitor cells remains less defined compared with other normal organs. Here, using a mouse strain expressing regulated CreERT2 recombinase from the endogenous Tert locus, we identify a distinct telomerase-expressing (TertHigh) cell population located in the ductal region of the adult SMG. These TertHigh cells contribute to ductal cell generation during SMG homeostasis and to both ductal and acinar cell renewal 1 year after radiotherapy. TertHigh cells maintain self-renewal capacity during in vitro culture, exhibit resistance to radiation damage, and demonstrate enhanced proliferative activity after radiation exposure. Similarly, primary human SMG cells with high Tert expression display enhanced cell survival after radiotherapy, and CRISPR-activated Tert in human SMG spheres increases proliferation after radiation. RNA sequencing reveals upregulation of "cell cycling" and "oxidative stress response" pathways in TertHigh cells following radiation. Mechanistically, Tert appears to modulate cell survival through ROS levels in SMG spheres following radiation damage. Our findings highlight the significance of TertHigh cells in salivary gland biology, providing insights into their response to radiotherapy and into their use as a potential target for enhancing salivary gland regeneration after radiotherapy.

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